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Frequency scanning Fabry–Pérot cavity antenna with single 2D-varying partial reflecting surface

机译:具有单个2D变化的部分反射表面的频率扫描法布里 - Pérot腔天线

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摘要

This study presents a frequency scanning Fabry-Perot cavity antenna with a single 2D varying partially reflecting surface (PRS) operating from 9.4 to 10.6 GHz. A probe-fed stacked rectangular patch antenna is applied as the primary source. A PRS consisting of 9 x 9 cells, whose sizes vary with azimuth, is mounted upon the source to modulate the phase efficiently. Due to the opposite correlations between scan angle and frequency in the forward and backward regions, phase distributions in the forward region are dominant in frequency scanning. The scan angle increases with frequency, as the negative correlation between the reflection phase of PRS and frequency. It is demonstrated that the beam angle is scanned from 11 degrees to 35 degrees with over 10 dBi gain and over 88% radiation efficiency within the band. The results in simulations and measurements validate the frequency scanning performance. It also provides the possibility that phase distributions in the forward region and the backward region could have the same weights in frequency scanning for better performances. Besides, without electronic/mechanical tuning, or PRS size varying, the proposed antenna is simple for design and operation.
机译:该研究介绍了一个频率扫描法布里 - 珀罗腔天线,其具有从9.4至10.6 GHz的9.4到10.6 GHz的部分反射表面(PRS)。探头堆叠矩形贴片天线作为主要源。由9×9个单元组成的PR,其尺寸随方位角而变化,安装在源上以有效地调节相位。由于向前和向后区域中的扫描角和频率之间的相反相关性,前向区域中的相位分​​布在频率扫描中占主导地位。扫描角度随频率增加,作为PRS和频率的反射阶段之间的负相关性。证明光束角度从11度扫描到35度,超过10dBi增益,并且在带内的辐射效率超过88%。仿真和测量的结果验证了频率扫描性能。它还提供了前向区域和后向区域中的相位分​​布可以具有相同的频率扫描权重,以便更好的性能。此外,没有电子/机械调谐,或PRS尺寸不同,所提出的天线对于设计和操作简单。

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